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Efficient Tandem Polymer Solar Cells Fabricated by All-Solution Processing

机译:通过全溶液加工制造的高效串联聚合物太阳能电池

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Tandem solar cells, in which two solar cells with different absorption characteristics are linked to use a wider range of the solar spectrum, were fabricated with each layer processed from solution with the use of bulk heterojunction materials comprising semiconducting polymers and fullerene derivatives. A transparent titanium oxide (TiO_x) layer separates and connects the front cell and the back cell. The TiO_x layer serves as an electron transport and collecting layer for the first cell and as a stable foundation that enables the fabrication of the second cell to complete the tandem cell architecture. We use an inverted structure with the low band-gap polymer-fullerene composite as the charge-separating layer in the front cell and the high band-gap polymer composite as that in the back cell. Power-conversion efficiencies of more than 6% were achieved at illuminations of 200 milliwatts per square centimeter.
机译:串联太阳能电池,其中两个具有不同吸收特性的太阳能电池连接在一起,以使用更大范围的太阳光谱,通过使用包含半导体聚合物和富勒烯衍生物的本体异质结材料,从溶液中加工出每一层,从而制造出串联太阳能电池。透明的氧化钛(TiO_x)层分隔并连接前电池和后电池。 TiO_x层用作第一个电池的电子传输和收集层,并用作使第二个电池的制造能够完成串联电池结构的稳定基础。我们使用倒带结构,将低带隙聚合物-富勒烯复合材料用作前单元中的电荷分离层,将高带隙聚合物复合物用作后单元中的电荷分离层。在每平方厘米200毫瓦的照明下,功率转换效率达到6%以上。

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